Recent Progress on Dark Energy Study Xinmin Zhang IHEP2007-09-07.

Slides:



Advertisements
Similar presentations
The Cosmological Slingshot Scenario A Stringy Proposal for Early Time Cosmology: Germani, NEG, Kehagias, hep-th/ Germani, NEG, Kehagias, arXiv:
Advertisements

Test CPT with CMB Mingzhe Li Department of Physics, Nanjing University May 10, 2011 IHEP Beijing.
Testing CPT with CMB 李明哲 University of Bielefeld 2008 年 4 月 28 日.
Cosmological CPT Violation, Baryo/leptogenesis and CMB Polarization Mingzhe Li Nanjing University.
Dark energy and its connections to neutrino, baryo/leptogenesis and dark matter Xinmin Zhang Institute of High Energy Physics Beijing Outline of the talk.
Recent progress on the study of Dark Energy Xinmin Zhang Institute of high energy physics 1) Brief review on the models of dark energy, especially on Quintom.
Primordial Neutrinos and Cosmological Perturbation in the Interacting Dark-Energy Model: CMB and LSS Yong-Yeon Keum National Taiwan University SDSS-KSG.
L. Perivolaropoulos Department of Physics University of Ioannina Open page.
Quintessence and the Accelerating Universe
Neutrino Mass due to Quintessence and Accelerating Universe Gennady Y. Chitov Laurentian University, Canada.
An Introduction to Inflation and Bouncing Cosmology Taotao Qiu Chung Yuan Christian University
Álvaro de la Cruz-Dombriz Theoretical Physics Department Complutense University of Madrid in collaboration with Antonio L. Maroto & Antonio Dobado Different.
Lecture 2: Observational constraints on dark energy Shinji Tsujikawa (Tokyo University of Science)
José Beltrán and A. L. Maroto Dpto. Física teórica I, Universidad Complutense de Madrid XXXI Reunión Bienal de Física Granada, 11 de Septiembre de 2007.
Physical Constraints on Gauss-Bonnet Dark Energy Cosmologies Ishwaree Neupane University of Canterbury, NZ University of Canterbury, NZ DARK 2007, Sydney.
Dark Energy Perturbations 李明哲 南京大学物理学院 中国科技大学交叉学科理论研究中心 合肥.
The Statistically Anisotropic Curvature Perturbation from Vector Fields Mindaugas Karčiauskas Dimopoulos, MK, JHEP 07 (2008) Dimopoulos, MK, Lyth, Rodriguez,
Falsifying Paradigms for Cosmic Acceleration Michael Mortonson Kavli Institute for Cosmological Physics University of Chicago January 22, 2009.
COSMO 2006, Lake Tahoe 9/28/2006 Cuscuton Cosmology: Cuscuton Cosmology: Dark Energy meets Modified Gravity Niayesh Afshordi Institute for Theory and Computation.
暗能量和宇宙学 CPT 破坏 李明哲 南京大学物理系 粒子 - 核 - 宇宙学联合研究中心. Outline 1, Brief review on dark energy models, cosmological constant or dynamical dark energy, current.
New Inflation Amy Bender 05/03/2006. Inflation Basics Perturbations from quantum fluctuations of scalar field Fluctuations are: –Gaussian –Scale Invariant.
Voids of dark energy Irit Maor Case Western Reserve University With Sourish Dutta PRD 75, gr-qc/ Irit Maor Case Western Reserve University With.
The Statistically Anisotropic Curvature Perturbation from Vector Fields Mindaugas Karčiauskas Dimopoulos, Karčiauskas, JHEP 07, 119 (2008) Dimopoulos,
Higgs inflation in minimal supersymmetric SU(5) GUT Nobuchika Okada University of Alabama, Tuscaloosa, AL In collaboration with Masato Arai & Shinsuke.
Non-Gaussianities of Single Field Inflation with Non-minimal Coupling Taotao Qiu Based on paper: arXiv: [Hep-th] (collaborated with.
Based on Phys.Rev.D84:043515,2011,arXiv: &JCAP01(2012)016 Phys.Rev.D84:043515,2011,arXiv: &JCAP01(2012)016.
Emergent Universe Scenario
Quintom Bounce with a Galileon Model Chung-Yuan Christian University, Taiwan & Institute of High Energy Physics, Beijing Based on Collaborated.
Probing the Reheating with Astrophysical Observations Jérôme Martin Institut d’Astrophysique de Paris (IAP) 1 [In collaboration with K. Jedamzik & M. Lemoine,
Quintom Cosmology Tao-Tao Qiu & Yi-Fu Cai, IHEP (邱涛涛、蔡一夫, 中科院高能所) ( “ 精灵 ” 宇宙学)
Thermodynamics of Apparent Horizon & Dynamics of FRW Spacetime Rong-Gen Cai (蔡荣根) Institute of Theoretical Physics Chinese Academy of Sciences.
1 Dark Energy & MSSM Jérôme Martin Institut d’Astrophysique de Paris (IAP)
Dark Energy, Cosmological CPT Violation and Baryo/Leptogenesis Xinmin Zhang Institute of high energy physics 1) Brief review on the dark energy study;
Dark Energy in f(R) Gravity Nikodem J. Popławski Indiana University 16 th Midwest Relativity Meeting 18 XI MMVI.
Higher Derivative Dark Energy Mingzhe Li Department of Physics, Nanjing University May 22, 2012 IHEP Beijing.
Constraining SUSY GUTs and Inflation with Cosmology Collaboration : M. Sakellariadou, R. Jeannerot. References : Jeannerot, J. R., Sakellariadou (2003)
Michael Doran Institute for Theoretical Physics Universität Heidelberg Time Evolution of Dark Energy (if any …)
The Games for Universe Yun-Song Piao Interdisciplinary Center of Theoretical Studies Chinese Academy of Sciences.
ERE 2008September 15-19, Spanish Relativity Meeting 2008, Salamanca, September (2008) Avoiding the DARK ENERGY coincidence problem with a COSMIC.
Theoretical Aspects of Dark Energy Models Rong-Gen Cai Institute of Theoretical Physics Chinese Academy of Sciences CCAST, July 4, 2005.
Interacting Dark Energy Xinmin Zhang Institute of High Energy Physics Beijing Outline of the talk I. Current constraints on Dark Energy a. Constraints.
Holographic Dark Energy and Anthropic Principle Qing-Guo Huang Interdisciplinary Center of Theoretical Studies CAS
A Galileon Bounce Model Based on JCAP 1110:036,2011 (arXiv: ) Collaborated with J. Evslin, Y. F. Cai, M. Z. Li, X. M. Zhang See also D. Easson.
Dark Energy in the Early Universe Joel Weller arXiv:gr-qc/
Quantum Noises and the Large Scale Structure Wo-Lung Lee Physics Department, National Taiwan Normal University Physics Department, National Taiwan Normal.
Dark Energy and its connections to Neutrinos, Baryogenesis and Dark Matter Xinmin Zhang Institute of High Energy Physics, Beijing P. R. China.
Quintessence Dark Energy & Acceleration of the Universe B URIN G UMJUDPAI The Tah Poe Academia Institute for Theoretical Physics & Cosmology Department.
L. Perivolaropoulos Department of Physics University of Ioannina Open page.
Probing Dark Energy with Cosmological Observations Fan, Zuhui ( 范祖辉 ) Dept. of Astronomy Peking University.
Determining cosmological parameters with the latest observational data Hong Li TPCSF/IHEP
宇宙微波背景辐射与 CPT 破坏 李明哲 南京大学物理学院 南大 - 紫台 粒子 - 核 - 宇宙学联合研究中心 南昌 中国高能物理学会.
Determination of cosmological parameters Gong-Bo Zhao, Jun-Qing Xia, Bo Feng, Hong Li Xinmin Zhang IHEP, Beijing
Cosmology in Eddington- inspired Born-Infeld gravity Hyeong-Chan Kim Korea National University of Transportation 19 Feb 2013 The Ocean Suites Jeju, Asia.
Cosmology of Non-Hermitian (C)PT-invariant scalar matter A.A. Andrianov Universitat de Barcelona( ECM & ICC) & St.Petersburg State University Discrete2008,
ETSU Astrophysics 3415: “The Concordance Model in Cosmology: Should We Believe It?…” Martin Hendry Nov 2005 AIM:To review the current status of cosmological.
Machian General Relativity A possible solution to the Dark Energy problem and an alternative to Big Bang cosmology ? Robin Booth Theoretical Physics Imperial.
Spherical Collapse and the Mass Function – Chameleon Dark Energy Stephen Appleby, APCTP-TUS dark energy workshop 5 th June, 2014 M. Kopp, S.A.A, I. Achitouv,
Thermodynamical behaviors of nonflat Brans-Dicke gravity with interacting new agegraphic dark energy Xue Zhang Department of Physics, Liaoning Normal University,
Interacting Dark Energy
Probing the Coupling between Dark Components of the Universe
Recent status of dark energy and beyond
Dark Energy of the Universe
Notes on non-minimally derivative coupling
The Cosmological Constant Problem & Self-tuning Mechanism
Emergent Cyclic universe & Tolman's Entropy Problem
Quantum Spacetime and Cosmic Inflation
Tev particle astrophysics at IHEP
Cosmological Scaling Solutions
Determining cosmological parameters with current observational data
李明哲 南京大学物理系 粒子-核-宇宙学联合研究中心
Presentation transcript:

Recent Progress on Dark Energy Study Xinmin Zhang IHEP

Outline Global analysis on the determination of cosmological parameters Global analysis on the determination of cosmological parameters 1) The dynamics of Inflation? 2) The dynamical dark energy? Quintom Bounce Quintom Bounce Interacting dark energy Interacting dark energy cosmological CPT violation and CMB polarization

Inflation Predictions: 1. Flat Universe ( ); 2. and, Current Status: 1., fit well; 2. about ; 3. about.

Curvature of Universe J.Q.Xia et al. arXiv:

Inflationary Models J.Q.Xia et al. arXiv:

Constraint on the inflationary models Large-field Inflation Hybrid Inflation Small-field Inflation Implication for Inflation Models?

Dark Energy Classification of the Dark Energy Models: 1. ; 2. ;. Current Status: 1. fits well; 2., less than

Equation of State of Dark Energy

WMAP3+LSS+SN WMAP3+LSS+SN+GRB Hong Li, M. su, Z.H. Fan, Z.G. Dai and X.Zhang, astro-ph/

The study with GRBs: E.L.Wright astro-ph/

Existence (√) Existence (√) Nature (?) Nature (?) Modified Gravity, DGP Model (disfavored) Modified Gravity, DGP Model (disfavored) (Consistent check? Comments) (Consistent check? Comments) W(z): Cosmological constant; Quintessence; Phantom; Quintom; …… W(z): Cosmological constant; Quintessence; Phantom; Quintom; …… If dynamical, interaction … If dynamical, interaction … Variation of fine structure coupling constant; Variation of fine structure coupling constant; Cosmological P and CPT violation; Cosmological P and CPT violation; Mass varying Neutrino; Mass varying Neutrino; Effects on the determinations of cosmological parameters Effects on the determinations of cosmological parameters Observations ( Data and range of redshift ) limited; Observations ( Data and range of redshift ) limited; Interestingly and important: study the implications of dark energy in the evolution of universe ( bounce, fate of universe ) ---- dynamical model

I. Dynamics of Inflation and Dark Energy: Weak! II. Surprising: 1. too large; 2. crossing : theoretical challenge. III. Inflation: Dynamical (generally believing) Dark Energy: Dynamical ? My personal View: Dynamical Dark Energy Fate of the Universe somehow connected to “ Pre Big-Bang ” Quintom Bounce!! Important Chinese contribution!!

No-Go Theorem For theory of dark energy (DE) in the 4D Friedmann- Robertson-Walker (FRW) universe described by a single perfect fluid or a single scalar field with a lagrangian of, which minimally couples to Einstein Gravity, its equation of state w cannot cross over the cosmological constant boundary. Bo Feng et al., Phys. Lett. B 607, 35 (2005); A. Vikman, Phys. Rev. D 71, (2005); W. Hu, Phys. Rev. D 71, (2005); R. R. Caldwell and M. Doran, Phys. Rev. D 72, (2005); Gong-Bo Zhao et al., Phys. Rev. D 72, (2005); H. Wei, PhD Thesis (2006); M. Kunz and D. Sapone, Phys. Rev. D 74, (2006); …… J. Xia, Y. F. Cai, T. Qiu, G. B. Zhao and X. M. Zhang, astro-ph/

Double Field Model Bo Feng, Xiulian Wang and Xinmin Zhang, Phys. Lett. B 607, 35 (2005) Action: Potential:  Classical: w can cross -1 easily  If quantized: un- stable because of ghost!

Single Scalar Field with High Derivative Action:  Classical: w can also cross -1 due to HD operator.  Quantum: avoid in- stability if taking c-term perturbatively.

String-inspired Quintom Model Action : Different from conventional single scalar field with high derivative, this Quintom model (beta term involves two scalars and two derivatives, the same as alpha term) has its HD term residing in the square root. This model can be viewed as a generalization of tachyon models. Potential: Yifu Cai et al., Phys. Lett. B 651, 1 (2007), [arXiv: hep-th/ ]

The dilemma of Big Bang Cosmology Though widely recognized, there are still problems existing in Big Bang Cosmology: Though widely recognized, there are still problems existing in Big Bang Cosmology: Singularity Problem Singularity Problem Flatness Problem Flatness Problem Homogeneity Problem Homogeneity Problem Large Scale Structure Large Scale Structure Unwanted Relics Unwanted Relics 。。。。。。 。。。。。。 Inflationary Cosmology can solve most of these problems, but singularity still remains a problem. Inflationary Cosmology can solve most of these problems, but singularity still remains a problem.

Basic idea of Quintom Bounce The expanding of the universe is transited from a contracting phase; during the transition the scale factor of the universe is at its minimum but non-vanishing, thus the singularity problem can be avoided. Contracting phase : Expanding Phase: At the boun- cing point: Around it: Transition to the observable universe (radiation dominant, matter dominant,…) So w needs to cross -1, and Quintom is required ! Yifu Cai et al., arXiv: [gr-qc]

A phenomenological Quintom model with the equation of state across -1 can lead to a bouncing solution. I. Quintom Bounce with Parameterized EoS

II. Quintom Bounce with Double Fields The action : where

III. Quintom Bounce with a single scalar field The action: where

Imprints of bouncing on CMB? Y. S. Piao, B. Feng and X. M. Zhang, Phys. Rev. D 69, (2004) A scenario, a contracting phase followed by an inflationary phase, can provide a reasonable explanation for lower CMB anisotropies on large angular scales. Released WMAP data show a low value of quadrupole in the CMB temperature fluctuations.

WMAP1 WMAP3 Low CMB Quadrupole & Wiggles WMAP1 WMAP3

Interacting dark energy Coupling to Baryon, Cold dark matter Coupling to Baryon, Cold dark matter constraints from …… constraints from …… Coupling to Neutrinos: Mass varying Neutrino Coupling to Neutrinos: Mass varying Neutrino Interaction with derivatives Interaction with derivatives cosmological CPT violation cosmological CPT violation Baryo-/Leptogenesis Baryo-/Leptogenesis CMB polarization CMB polarization

M.Li et al. PRD65:103511,2002 PLB573:20,2003 H.Li et al. PRD70:047302,2004

Quintessential Baryo/Leptogenesis M.Li, X.Wang, B.Feng, X. Zhang PRD65, (2002) M.Li & X. Zhang , PLB573,20 (2003) The value of depends on the model of Quintessence Cosmological CPT violation! In thermo equilibrium Cohen & Kaplan

模型检验 : Bo Feng, Hong Li, Minzhe Li and Xinmin Zhang Phys. Lett. B620(2005)27 其中 : 有效理论: 由 baryogenesis: 实验探测 : in the future CMB polarization experiments will be Tested.

Searching for CPT violation

Cosmological CPT violation: Predicting and Bo Feng, Mingzhe Li, Jun-Qing Xia, Xuelei Chen and Xinmin Zhang Phys. Rev. Lett. 96, (2006) (Note here the notation: G ~ E, C~ B)

Our preliminary result: WMAP3+BOOMERANG -6.2+/-3.8 deg Compare with old result: -5.9+/-3.9 deg

Summary Inflation? PLANCK Inflation? PLANCK Dark Energy? SNAP Dark Energy? SNAPLAMOST?! Probing for fundamental physics (string theory) Probing for fundamental physics (string theory) Precision measurement of CMB accurate test on CPT ……

Thank you !